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Correlation Study Using Scuffing Damage to Investigate Improved Simulation Techniques for Packaging Vibration Testing

机译:相关研究,使用擦伤来研究改进的包装振动测试模拟技术

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摘要

Vibration testing of packaging is a critical part of the distribution packaging analysis process. The accuracy of simulated vibration is important for packaging optimization. Because of this, several researchers have developed improved simulation methods to produce more realistic vibration tests. Correlation studies are required to verify these methods, ideally using actual packaged products in transit. Unfortunately, cost, time and complexity issues make carrying out studies with actual product difficult. This article uses a specially designed and proven test rig, which simulates the damage mechanism of scuffing, to carry out a correlation study. The study compares the level of damage produced when performing simulations using a range of improved techniques in comparison with the time-history reproduction of a journey (used as a benchmark) and the established method using the average power density spectrum to create a Gaussian simulation signal. The level of scuffing damage produced varied between the different simulation methods, with the modulated root mean square (RMS) technique and the accelerated power density spectrum (with a time compression of 5 and a k equal to 2) best reproducing the level of damage observed from the benchmark time replication test.
机译:包装的振动测试是配送包装分析过程的关键部分。模拟振动的准确性对于优化包装非常重要。因此,一些研究人员开发了改进的仿真方法,以进行更真实的振动测试。需要进行相关研究以验证这些方法,最好使用运输中的实际包装产品。不幸的是,成本,时间和复杂性问题使用实际产品进行研究变得困难。本文使用经过特殊设计和验证的测试台,以模拟磨损的损伤机理,进行相关性研究。该研究比较了使用一系列改进技术与行程的时间历史重现(用作基准)进行模拟时所产生的损害程度,并比较了使用平均功率密度谱创建高斯模拟信号的既定方法。在不同的模拟方法之间,产生的划伤损伤程度各不相同,采用调制的均方根(RMS)技术和加速的功率密度谱(时间压缩为5且ak等于2)能最好地重现从基准时间复制测试。

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